Fluid Innovation Lab at UNLV
Fluid Innovation Lab at UNLV
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Effect of the Axial Casing Groove Geometry on the Production and Distribution of Reynolds Stresses in the Tip Region of an Axial Compressor Rotor
Biomechanics of Transcatheter Aortic Valve Replacement Complications and Computational Predictive Modeling
Image Registration-Based Method for Reconstructing Transcatheter Heart Valve Geometry from Patient-Specific CT Scans
Effects of Axial Casing Grooves on the Structure of Turbulence in the Tip Region of an Axial Turbomachine Rotor
A 3D Bioprinted In Vitro Model of Pulmonary Artery Atresia to Evaluate Endothelial Cell Response to Microenvironment
Effect of Axial Casing Groove Geometry on Rotor-Groove Interactions in the Tip Region of a Compressor
Experimental Investigations of Cavitation Performance Breakdown in an Axial Waterjet Pump
Systematic Experimental Evaluations Aimed at Optimizing the Geometry of Axial Casing Groove in a Compressor
Challenges in Modeling of Turbulence in the Tip Region of Axial Turbomachines
On the Interactions of a Rotor Blade Tip Flow With Axial Casing Grooves in an Axial Compressor Near the Best Efficiency Point
An Experimental Study of Stall Suppression and Associated Changes to the Flow Structures in the Tip Region of an Axial Low Speed Fan Rotor by Axial Casing Grooves
Measurements and Characterization of Turbulence in the Tip Region of an Axial Compressor Rotor
Visualizations of flow structures in the rotor passage of an axial compressor at the onset of stall
Effects of tip clearance and operating conditions on the flow structure and turbulence within an axial compressor rotor passage
Stereoscopic PIV Measurement of the Flow in the Tip Region of an Axial Waterjet Pump
Effects of Tip Gap Size on the Flow Structure in the Tip Region of an Axial Turbomachine
The three dimensional flow structure and turbulence in the tip region of an axial flow compressor
Vortex structures for flow over a delta wing with sinusoidal leading edge
Effects of sinusoidal leading edge on delta wing performance and mechanism
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